115
Views
15
CrossRef citations to date
0
Altmetric
Original Articles

Study on Synthesis and Structure of Sterically Demanding 6-Phosphafulvenes

, &
Pages 917-927 | Received 30 Nov 2007, Accepted 01 Mar 2008, Published online: 26 Mar 2009

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (1)

Anna I. Arkhypchuk, Yurii V. Svyaschenko & Sascha Ott. (2015) Versatile Approach to 3-Phosphahexatrienes Bearing Low Coordinated Phosphorus. Phosphorus, Sulfur, and Silicon and the Related Elements 190:5-6, pages 638-646.
Read now

Articles from other publishers (14)

Xiaoming Jie, Constantin G. Daniliuc, Robert Knitsch, Michael Ryan Hansen, Hellmut Eckert, Sebastian Ehlert, Stefan Grimme, Gerald Kehr & Gerhard Erker. (2019) Aggregation Behavior of a Six‐Membered Cyclic Frustrated Phosphane/Borane Lewis Pair: Formation of a Supramolecular Cyclooctameric Macrocyclic Ring System. Angewandte Chemie International Edition 58:3, pages 882-886.
Crossref
Xiaoming Jie, Constantin G. Daniliuc, Robert Knitsch, Michael Ryan Hansen, Hellmut Eckert, Sebastian Ehlert, Stefan Grimme, Gerald Kehr & Gerhard Erker. (2018) Aggregation Behavior of a Six‐Membered Cyclic Frustrated Phosphane/Borane Lewis Pair: Formation of a Supramolecular Cyclooctameric Macrocyclic Ring System. Angewandte Chemie.
Crossref
Shunxi Dong, Long Wang, Tongdao Wang, Constantin G. Daniliuc, Melanie Brinkkötter, Hellmut Eckert, Gerald Kehr & Gerhard Erker. (2018) Formation and reactions of active five-membered phosphane/borane frustrated Lewis pair ring systems. Dalton Transactions 47:13, pages 4449-4454.
Crossref
Long Wang, Shunxi Dong, Constantin G. Daniliuc, Lei Liu, Stefan Grimme, Robert Knitsch, Hellmut Eckert, Michael Ryan Hansen, Gerald Kehr & Gerhard Erker. (2018) Formation of macrocyclic ring systems by carbonylation of trifunctional P/B/B frustrated Lewis pairs. Chemical Science 9:6, pages 1544-1550.
Crossref
Takahiro SasamoriJosé Manuel Villalba Franco, Jing‐Dong GuoKoh SugamataShigeru Nagase, Rainer Streubel & Norihiro Tokitoh. (2015) Selenium‐Substituted Phosphaalk­enes Obtained through 1,2‐Elimination of Chlorosilanes from Selenen­ylchlorophosphines. European Journal of Inorganic Chemistry 2016:5, pages 678-684.
Crossref
Hans Klöcker, Marcus Layh, Alexander Hepp & Werner Uhl. (2016) Hydroalumination of alkynyl-aminophosphines as a promising tool for the synthesis of unusual phosphines: P–N bond activation, a transient phosphaallene, a zwitterionic AlP 2 C 2 heterocycle and a masked Al/P-based frustrated Lewis pair . Dalton Transactions 45:5, pages 2031-2043.
Crossref
Baolin Li, Shota Tsujimoto, Yongming Li, Hayato Tsuji, Kohei Tamao, Daisuke Hashizume & Tsukasa Matsuo. (2014) Synthesis and Characterization of Diphosphenes Bearing Fused-Ring Bulky Rind Groups. Heteroatom Chemistry 25:6, pages 612-618.
Crossref
Shigekazu Ito, Shunsuke Okabe, Yasuhiro Ueta & Koichi Mikami. (2014) Formation of phosphanoxy-substituted phosphaalkenes via sterically promoted cleavage of the PP diphosphene bond. Chem. Commun. 50:65, pages 9204-9206.
Crossref
Shigekazu Ito, Makoto Kobayashi & Koichi Mikami. (2013) Through-space Electrostatic Interaction between the Electron-donating 1,3-Diphosphacyclobutane-2,4-diyl Units. Organic Letters 15:13, pages 3404-3407.
Crossref
M. Kumar. 2013. Chemical Shifts and Coupling Constants for Phosphorus-31. Chemical Shifts and Coupling Constants for Phosphorus-31 1385 1385 .
M. Kumar. 2013. Chemical Shifts and Coupling Constants for Phosphorus-31. Chemical Shifts and Coupling Constants for Phosphorus-31 1380 1380 .
M. Kumar. 2013. Chemical Shifts and Coupling Constants for Phosphorus-31. Chemical Shifts and Coupling Constants for Phosphorus-31 1379 1379 .
Gyorgy Keglevich, Irina Odinets, M Migaud, Gerd-Volker Roeschenthaler, Piotr Balczewski, Frederick Stewart & Robert SlinnD. W. Allen. 2011. Organophosphorus Chemistry. Organophosphorus Chemistry 1 51 .
Shigekazu Ito, Joji Miura, Noboru Morita, Masaaki Yoshifuji & Anthony J. ArduengoIIIIII. (2010) Synthesis and physicochemical properties of stable 1,3-diphosphacyclobutane-2,4-diyls bearing sulfanyl groups. Comptes Rendus Chimie 13:8-9, pages 1180-1184.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.